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A functional ultrasound brain GPS for automatic vascular-based neuronavigation.

M Nouhoum1,2, J Ferrier2, B-F Osmanski2

  • 1Physics for Medicine, INSERM U1273, ESPCI Paris, CNRS UMR 8063, PSL Research University, 17 rue Moreau, Paris, France.

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This study introduces the vascular brain positioning system (BPS), a novel neuronavigation tool for functional ultrasound (fUS) imaging. BPS enables automatic brain navigation and structure identification, improving experimental standardization in neuroimaging research.

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Area of Science:

  • Neuroimaging
  • Ultrasound Technology
  • Computational Neuroscience

Background:

  • Functional ultrasound (fUS) imaging offers high-sensitivity neurovascular mapping but lacks precise anatomical identification during experiments.
  • Current methods for identifying brain structures in fUS are challenging, limiting the modality's broader application.

Purpose of the Study:

  • To develop and validate a whole-brain neuronavigation system, the vascular brain positioning system (BPS), for on-the-fly anatomical identification in fUS imaging.
  • To enhance the accuracy and standardization of fUS experiments by enabling automatic brain navigation and structure localization.

Main Methods:

  • The BPS system employs automatic on-the-fly alignment of ultrafast transcranial Power Doppler ultrasound images to a reference vascular atlas (Allen Mouse Brain Common Coordinates Framework).
  • Registration accuracy was quantified using Ultrasound Localization Microscopy, comparing BPS performance against manual landmark recognition by experts.

Main Results:

  • The BPS achieved high accuracy in vascular registration, with positioning errors of 44 µm (intra-animal) and 96 µm (inter-animal).
  • BPS significantly outperformed manual landmark recognition, which had errors of 215 µm and 259 µm.
  • The system successfully demonstrated automatic positioning over anatomical structures and acquisition of functional activation maps, even in oblique planes.

Conclusions:

  • The vascular brain positioning system (BPS) provides an accurate and automated solution for brain navigation in fUS imaging.
  • BPS facilitates rapid identification of brain structures and acquisition of functional data, paving the way for standardized neuroimaging protocols.
  • This automated neuronavigation approach has the potential to become a crucial tool for both expert and non-expert researchers in neuroscience.